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Accommodating perceptions of risk in performance-based building fire safety code development

机译:适应基于性能的建筑消防安全规范开发中的风险意识

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摘要

Differing perceptions of risk by various stakeholders have long played a role in infiuencing the development of prescriptive-based building fire safety codes. As performance-based build- ing fire safety codes are developed, differing perceptions of risk will continue to be a significant influence. In this paper, the concepts of revealed preference, risk factors, risk adjustment factors and risk conversion factors are discussed, and two methods to address risk perceptions in a performance-based building fire safety code are introduced. The first method proposes the use of risk factors to classify buildings in terms such as low, medium, and high risk. Each class of building would be assigned a risk adjustment factor. Similar to safety factors, risk adjustment factors would be applied during deterministic building fire safety design to provide an increased level of safety in buildings where the risk perceptions would mandate greater safety. The second method would be used with a probabilistic-based building fire safety design approach, and uses risk factors to develop risk conversion factors (RCFs). In the probabilistic approach, a max- imum expected-risk-to-life (ERL) value would be established by the code, with appropriate RCFs being applied to adjust maximum ERL values depending on how the building's fire safety risk is perceived.
机译:长期以来,各种利益相关者对风险的不同理解一直在影响基于规范的建筑消防安全法规的发展。随着基于性能的建筑消防安全规范的制定,对风险的不同理解将继续成为重大影响。本文讨论了显性偏好,风险因素,风险调整因素和风险转换因素的概念,并介绍了两种基于性能的建筑消防安全法规中解决风险认知的方法。第一种方法建议使用风险因素按照低,中和高风险对建筑物进行分类。每类建筑物都将分配一个风险调整因子。与安全因素相似,在确定性建筑消防安全设计期间将应用风险调整因素,以在风险感知要求更高安全性的建筑物中提供更高的安全水平。第二种方法将与基于概率的建筑物消防安全设计方法一起使用,并使用风险因子来开发风险转换因子(RCF)。在概率方法中,将通过代码确定最大预期寿命风险(ERL)值,并根据对建筑物的消防安全风险的感知,采用适当的RCF来调整最大ERL值。

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